zynq_gem.c 20 KB

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  1. /*
  2. * (C) Copyright 2011 Michal Simek
  3. *
  4. * Michal SIMEK <monstr@monstr.eu>
  5. *
  6. * Based on Xilinx gmac driver:
  7. * (C) Copyright 2011 Xilinx
  8. *
  9. * SPDX-License-Identifier: GPL-2.0+
  10. */
  11. #include <common.h>
  12. #include <dm.h>
  13. #include <net.h>
  14. #include <netdev.h>
  15. #include <config.h>
  16. #include <console.h>
  17. #include <malloc.h>
  18. #include <asm/io.h>
  19. #include <phy.h>
  20. #include <miiphy.h>
  21. #include <wait_bit.h>
  22. #include <watchdog.h>
  23. #include <asm/system.h>
  24. #include <asm/arch/hardware.h>
  25. #include <asm/arch/sys_proto.h>
  26. #include <linux/errno.h>
  27. DECLARE_GLOBAL_DATA_PTR;
  28. /* Bit/mask specification */
  29. #define ZYNQ_GEM_PHYMNTNC_OP_MASK 0x40020000 /* operation mask bits */
  30. #define ZYNQ_GEM_PHYMNTNC_OP_R_MASK 0x20000000 /* read operation */
  31. #define ZYNQ_GEM_PHYMNTNC_OP_W_MASK 0x10000000 /* write operation */
  32. #define ZYNQ_GEM_PHYMNTNC_PHYAD_SHIFT_MASK 23 /* Shift bits for PHYAD */
  33. #define ZYNQ_GEM_PHYMNTNC_PHREG_SHIFT_MASK 18 /* Shift bits for PHREG */
  34. #define ZYNQ_GEM_RXBUF_EOF_MASK 0x00008000 /* End of frame. */
  35. #define ZYNQ_GEM_RXBUF_SOF_MASK 0x00004000 /* Start of frame. */
  36. #define ZYNQ_GEM_RXBUF_LEN_MASK 0x00003FFF /* Mask for length field */
  37. #define ZYNQ_GEM_RXBUF_WRAP_MASK 0x00000002 /* Wrap bit, last BD */
  38. #define ZYNQ_GEM_RXBUF_NEW_MASK 0x00000001 /* Used bit.. */
  39. #define ZYNQ_GEM_RXBUF_ADD_MASK 0xFFFFFFFC /* Mask for address */
  40. /* Wrap bit, last descriptor */
  41. #define ZYNQ_GEM_TXBUF_WRAP_MASK 0x40000000
  42. #define ZYNQ_GEM_TXBUF_LAST_MASK 0x00008000 /* Last buffer */
  43. #define ZYNQ_GEM_TXBUF_USED_MASK 0x80000000 /* Used by Hw */
  44. #define ZYNQ_GEM_NWCTRL_TXEN_MASK 0x00000008 /* Enable transmit */
  45. #define ZYNQ_GEM_NWCTRL_RXEN_MASK 0x00000004 /* Enable receive */
  46. #define ZYNQ_GEM_NWCTRL_MDEN_MASK 0x00000010 /* Enable MDIO port */
  47. #define ZYNQ_GEM_NWCTRL_STARTTX_MASK 0x00000200 /* Start tx (tx_go) */
  48. #define ZYNQ_GEM_NWCFG_SPEED100 0x00000001 /* 100 Mbps operation */
  49. #define ZYNQ_GEM_NWCFG_SPEED1000 0x00000400 /* 1Gbps operation */
  50. #define ZYNQ_GEM_NWCFG_FDEN 0x00000002 /* Full Duplex mode */
  51. #define ZYNQ_GEM_NWCFG_FSREM 0x00020000 /* FCS removal */
  52. #define ZYNQ_GEM_NWCFG_SGMII_ENBL 0x08000000 /* SGMII Enable */
  53. #define ZYNQ_GEM_NWCFG_PCS_SEL 0x00000800 /* PCS select */
  54. #ifdef CONFIG_ARM64
  55. #define ZYNQ_GEM_NWCFG_MDCCLKDIV 0x00100000 /* Div pclk by 64, max 160MHz */
  56. #else
  57. #define ZYNQ_GEM_NWCFG_MDCCLKDIV 0x000c0000 /* Div pclk by 48, max 120MHz */
  58. #endif
  59. #ifdef CONFIG_ARM64
  60. # define ZYNQ_GEM_DBUS_WIDTH (1 << 21) /* 64 bit bus */
  61. #else
  62. # define ZYNQ_GEM_DBUS_WIDTH (0 << 21) /* 32 bit bus */
  63. #endif
  64. #define ZYNQ_GEM_NWCFG_INIT (ZYNQ_GEM_DBUS_WIDTH | \
  65. ZYNQ_GEM_NWCFG_FDEN | \
  66. ZYNQ_GEM_NWCFG_FSREM | \
  67. ZYNQ_GEM_NWCFG_MDCCLKDIV)
  68. #define ZYNQ_GEM_NWSR_MDIOIDLE_MASK 0x00000004 /* PHY management idle */
  69. #define ZYNQ_GEM_DMACR_BLENGTH 0x00000004 /* INCR4 AHB bursts */
  70. /* Use full configured addressable space (8 Kb) */
  71. #define ZYNQ_GEM_DMACR_RXSIZE 0x00000300
  72. /* Use full configured addressable space (4 Kb) */
  73. #define ZYNQ_GEM_DMACR_TXSIZE 0x00000400
  74. /* Set with binary 00011000 to use 1536 byte(1*max length frame/buffer) */
  75. #define ZYNQ_GEM_DMACR_RXBUF 0x00180000
  76. #define ZYNQ_GEM_DMACR_INIT (ZYNQ_GEM_DMACR_BLENGTH | \
  77. ZYNQ_GEM_DMACR_RXSIZE | \
  78. ZYNQ_GEM_DMACR_TXSIZE | \
  79. ZYNQ_GEM_DMACR_RXBUF)
  80. #define ZYNQ_GEM_TSR_DONE 0x00000020 /* Tx done mask */
  81. #define ZYNQ_GEM_PCS_CTL_ANEG_ENBL 0x1000
  82. /* Use MII register 1 (MII status register) to detect PHY */
  83. #define PHY_DETECT_REG 1
  84. /* Mask used to verify certain PHY features (or register contents)
  85. * in the register above:
  86. * 0x1000: 10Mbps full duplex support
  87. * 0x0800: 10Mbps half duplex support
  88. * 0x0008: Auto-negotiation support
  89. */
  90. #define PHY_DETECT_MASK 0x1808
  91. /* TX BD status masks */
  92. #define ZYNQ_GEM_TXBUF_FRMLEN_MASK 0x000007ff
  93. #define ZYNQ_GEM_TXBUF_EXHAUSTED 0x08000000
  94. #define ZYNQ_GEM_TXBUF_UNDERRUN 0x10000000
  95. /* Clock frequencies for different speeds */
  96. #define ZYNQ_GEM_FREQUENCY_10 2500000UL
  97. #define ZYNQ_GEM_FREQUENCY_100 25000000UL
  98. #define ZYNQ_GEM_FREQUENCY_1000 125000000UL
  99. /* Device registers */
  100. struct zynq_gem_regs {
  101. u32 nwctrl; /* 0x0 - Network Control reg */
  102. u32 nwcfg; /* 0x4 - Network Config reg */
  103. u32 nwsr; /* 0x8 - Network Status reg */
  104. u32 reserved1;
  105. u32 dmacr; /* 0x10 - DMA Control reg */
  106. u32 txsr; /* 0x14 - TX Status reg */
  107. u32 rxqbase; /* 0x18 - RX Q Base address reg */
  108. u32 txqbase; /* 0x1c - TX Q Base address reg */
  109. u32 rxsr; /* 0x20 - RX Status reg */
  110. u32 reserved2[2];
  111. u32 idr; /* 0x2c - Interrupt Disable reg */
  112. u32 reserved3;
  113. u32 phymntnc; /* 0x34 - Phy Maintaince reg */
  114. u32 reserved4[18];
  115. u32 hashl; /* 0x80 - Hash Low address reg */
  116. u32 hashh; /* 0x84 - Hash High address reg */
  117. #define LADDR_LOW 0
  118. #define LADDR_HIGH 1
  119. u32 laddr[4][LADDR_HIGH + 1]; /* 0x8c - Specific1 addr low/high reg */
  120. u32 match[4]; /* 0xa8 - Type ID1 Match reg */
  121. u32 reserved6[18];
  122. #define STAT_SIZE 44
  123. u32 stat[STAT_SIZE]; /* 0x100 - Octects transmitted Low reg */
  124. u32 reserved9[20];
  125. u32 pcscntrl;
  126. u32 reserved7[143];
  127. u32 transmit_q1_ptr; /* 0x440 - Transmit priority queue 1 */
  128. u32 reserved8[15];
  129. u32 receive_q1_ptr; /* 0x480 - Receive priority queue 1 */
  130. };
  131. /* BD descriptors */
  132. struct emac_bd {
  133. u32 addr; /* Next descriptor pointer */
  134. u32 status;
  135. };
  136. #define RX_BUF 32
  137. /* Page table entries are set to 1MB, or multiples of 1MB
  138. * (not < 1MB). driver uses less bd's so use 1MB bdspace.
  139. */
  140. #define BD_SPACE 0x100000
  141. /* BD separation space */
  142. #define BD_SEPRN_SPACE (RX_BUF * sizeof(struct emac_bd))
  143. /* Setup the first free TX descriptor */
  144. #define TX_FREE_DESC 2
  145. /* Initialized, rxbd_current, rx_first_buf must be 0 after init */
  146. struct zynq_gem_priv {
  147. struct emac_bd *tx_bd;
  148. struct emac_bd *rx_bd;
  149. char *rxbuffers;
  150. u32 rxbd_current;
  151. u32 rx_first_buf;
  152. int phyaddr;
  153. u32 emio;
  154. int init;
  155. struct zynq_gem_regs *iobase;
  156. phy_interface_t interface;
  157. struct phy_device *phydev;
  158. int phy_of_handle;
  159. struct mii_dev *bus;
  160. };
  161. static inline int mdio_wait(struct zynq_gem_regs *regs)
  162. {
  163. u32 timeout = 20000;
  164. /* Wait till MDIO interface is ready to accept a new transaction. */
  165. while (--timeout) {
  166. if (readl(&regs->nwsr) & ZYNQ_GEM_NWSR_MDIOIDLE_MASK)
  167. break;
  168. WATCHDOG_RESET();
  169. }
  170. if (!timeout) {
  171. printf("%s: Timeout\n", __func__);
  172. return 1;
  173. }
  174. return 0;
  175. }
  176. static u32 phy_setup_op(struct zynq_gem_priv *priv, u32 phy_addr, u32 regnum,
  177. u32 op, u16 *data)
  178. {
  179. u32 mgtcr;
  180. struct zynq_gem_regs *regs = priv->iobase;
  181. if (mdio_wait(regs))
  182. return 1;
  183. /* Construct mgtcr mask for the operation */
  184. mgtcr = ZYNQ_GEM_PHYMNTNC_OP_MASK | op |
  185. (phy_addr << ZYNQ_GEM_PHYMNTNC_PHYAD_SHIFT_MASK) |
  186. (regnum << ZYNQ_GEM_PHYMNTNC_PHREG_SHIFT_MASK) | *data;
  187. /* Write mgtcr and wait for completion */
  188. writel(mgtcr, &regs->phymntnc);
  189. if (mdio_wait(regs))
  190. return 1;
  191. if (op == ZYNQ_GEM_PHYMNTNC_OP_R_MASK)
  192. *data = readl(&regs->phymntnc);
  193. return 0;
  194. }
  195. static u32 phyread(struct zynq_gem_priv *priv, u32 phy_addr,
  196. u32 regnum, u16 *val)
  197. {
  198. u32 ret;
  199. ret = phy_setup_op(priv, phy_addr, regnum,
  200. ZYNQ_GEM_PHYMNTNC_OP_R_MASK, val);
  201. if (!ret)
  202. debug("%s: phy_addr %d, regnum 0x%x, val 0x%x\n", __func__,
  203. phy_addr, regnum, *val);
  204. return ret;
  205. }
  206. static u32 phywrite(struct zynq_gem_priv *priv, u32 phy_addr,
  207. u32 regnum, u16 data)
  208. {
  209. debug("%s: phy_addr %d, regnum 0x%x, data 0x%x\n", __func__, phy_addr,
  210. regnum, data);
  211. return phy_setup_op(priv, phy_addr, regnum,
  212. ZYNQ_GEM_PHYMNTNC_OP_W_MASK, &data);
  213. }
  214. static int phy_detection(struct udevice *dev)
  215. {
  216. int i;
  217. u16 phyreg;
  218. struct zynq_gem_priv *priv = dev->priv;
  219. if (priv->phyaddr != -1) {
  220. phyread(priv, priv->phyaddr, PHY_DETECT_REG, &phyreg);
  221. if ((phyreg != 0xFFFF) &&
  222. ((phyreg & PHY_DETECT_MASK) == PHY_DETECT_MASK)) {
  223. /* Found a valid PHY address */
  224. debug("Default phy address %d is valid\n",
  225. priv->phyaddr);
  226. return 0;
  227. } else {
  228. debug("PHY address is not setup correctly %d\n",
  229. priv->phyaddr);
  230. priv->phyaddr = -1;
  231. }
  232. }
  233. debug("detecting phy address\n");
  234. if (priv->phyaddr == -1) {
  235. /* detect the PHY address */
  236. for (i = 31; i >= 0; i--) {
  237. phyread(priv, i, PHY_DETECT_REG, &phyreg);
  238. if ((phyreg != 0xFFFF) &&
  239. ((phyreg & PHY_DETECT_MASK) == PHY_DETECT_MASK)) {
  240. /* Found a valid PHY address */
  241. priv->phyaddr = i;
  242. debug("Found valid phy address, %d\n", i);
  243. return 0;
  244. }
  245. }
  246. }
  247. printf("PHY is not detected\n");
  248. return -1;
  249. }
  250. static int zynq_gem_setup_mac(struct udevice *dev)
  251. {
  252. u32 i, macaddrlow, macaddrhigh;
  253. struct eth_pdata *pdata = dev_get_platdata(dev);
  254. struct zynq_gem_priv *priv = dev_get_priv(dev);
  255. struct zynq_gem_regs *regs = priv->iobase;
  256. /* Set the MAC bits [31:0] in BOT */
  257. macaddrlow = pdata->enetaddr[0];
  258. macaddrlow |= pdata->enetaddr[1] << 8;
  259. macaddrlow |= pdata->enetaddr[2] << 16;
  260. macaddrlow |= pdata->enetaddr[3] << 24;
  261. /* Set MAC bits [47:32] in TOP */
  262. macaddrhigh = pdata->enetaddr[4];
  263. macaddrhigh |= pdata->enetaddr[5] << 8;
  264. for (i = 0; i < 4; i++) {
  265. writel(0, &regs->laddr[i][LADDR_LOW]);
  266. writel(0, &regs->laddr[i][LADDR_HIGH]);
  267. /* Do not use MATCHx register */
  268. writel(0, &regs->match[i]);
  269. }
  270. writel(macaddrlow, &regs->laddr[0][LADDR_LOW]);
  271. writel(macaddrhigh, &regs->laddr[0][LADDR_HIGH]);
  272. return 0;
  273. }
  274. static int zynq_phy_init(struct udevice *dev)
  275. {
  276. int ret;
  277. struct zynq_gem_priv *priv = dev_get_priv(dev);
  278. struct zynq_gem_regs *regs = priv->iobase;
  279. const u32 supported = SUPPORTED_10baseT_Half |
  280. SUPPORTED_10baseT_Full |
  281. SUPPORTED_100baseT_Half |
  282. SUPPORTED_100baseT_Full |
  283. SUPPORTED_1000baseT_Half |
  284. SUPPORTED_1000baseT_Full;
  285. /* Enable only MDIO bus */
  286. writel(ZYNQ_GEM_NWCTRL_MDEN_MASK, &regs->nwctrl);
  287. if (priv->interface != PHY_INTERFACE_MODE_SGMII) {
  288. ret = phy_detection(dev);
  289. if (ret) {
  290. printf("GEM PHY init failed\n");
  291. return ret;
  292. }
  293. }
  294. priv->phydev = phy_connect(priv->bus, priv->phyaddr, dev,
  295. priv->interface);
  296. if (!priv->phydev)
  297. return -ENODEV;
  298. priv->phydev->supported = supported | ADVERTISED_Pause |
  299. ADVERTISED_Asym_Pause;
  300. priv->phydev->advertising = priv->phydev->supported;
  301. if (priv->phy_of_handle > 0)
  302. priv->phydev->dev->of_offset = priv->phy_of_handle;
  303. return phy_config(priv->phydev);
  304. }
  305. static int zynq_gem_init(struct udevice *dev)
  306. {
  307. u32 i, nwconfig;
  308. int ret;
  309. unsigned long clk_rate = 0;
  310. struct zynq_gem_priv *priv = dev_get_priv(dev);
  311. struct zynq_gem_regs *regs = priv->iobase;
  312. struct emac_bd *dummy_tx_bd = &priv->tx_bd[TX_FREE_DESC];
  313. struct emac_bd *dummy_rx_bd = &priv->tx_bd[TX_FREE_DESC + 2];
  314. if (!priv->init) {
  315. /* Disable all interrupts */
  316. writel(0xFFFFFFFF, &regs->idr);
  317. /* Disable the receiver & transmitter */
  318. writel(0, &regs->nwctrl);
  319. writel(0, &regs->txsr);
  320. writel(0, &regs->rxsr);
  321. writel(0, &regs->phymntnc);
  322. /* Clear the Hash registers for the mac address
  323. * pointed by AddressPtr
  324. */
  325. writel(0x0, &regs->hashl);
  326. /* Write bits [63:32] in TOP */
  327. writel(0x0, &regs->hashh);
  328. /* Clear all counters */
  329. for (i = 0; i < STAT_SIZE; i++)
  330. readl(&regs->stat[i]);
  331. /* Setup RxBD space */
  332. memset(priv->rx_bd, 0, RX_BUF * sizeof(struct emac_bd));
  333. for (i = 0; i < RX_BUF; i++) {
  334. priv->rx_bd[i].status = 0xF0000000;
  335. priv->rx_bd[i].addr =
  336. ((ulong)(priv->rxbuffers) +
  337. (i * PKTSIZE_ALIGN));
  338. }
  339. /* WRAP bit to last BD */
  340. priv->rx_bd[--i].addr |= ZYNQ_GEM_RXBUF_WRAP_MASK;
  341. /* Write RxBDs to IP */
  342. writel((ulong)priv->rx_bd, &regs->rxqbase);
  343. /* Setup for DMA Configuration register */
  344. writel(ZYNQ_GEM_DMACR_INIT, &regs->dmacr);
  345. /* Setup for Network Control register, MDIO, Rx and Tx enable */
  346. setbits_le32(&regs->nwctrl, ZYNQ_GEM_NWCTRL_MDEN_MASK);
  347. /* Disable the second priority queue */
  348. dummy_tx_bd->addr = 0;
  349. dummy_tx_bd->status = ZYNQ_GEM_TXBUF_WRAP_MASK |
  350. ZYNQ_GEM_TXBUF_LAST_MASK|
  351. ZYNQ_GEM_TXBUF_USED_MASK;
  352. dummy_rx_bd->addr = ZYNQ_GEM_RXBUF_WRAP_MASK |
  353. ZYNQ_GEM_RXBUF_NEW_MASK;
  354. dummy_rx_bd->status = 0;
  355. flush_dcache_range((ulong)&dummy_tx_bd, (ulong)&dummy_tx_bd +
  356. sizeof(dummy_tx_bd));
  357. flush_dcache_range((ulong)&dummy_rx_bd, (ulong)&dummy_rx_bd +
  358. sizeof(dummy_rx_bd));
  359. writel((ulong)dummy_tx_bd, &regs->transmit_q1_ptr);
  360. writel((ulong)dummy_rx_bd, &regs->receive_q1_ptr);
  361. priv->init++;
  362. }
  363. ret = phy_startup(priv->phydev);
  364. if (ret)
  365. return ret;
  366. if (!priv->phydev->link) {
  367. printf("%s: No link.\n", priv->phydev->dev->name);
  368. return -1;
  369. }
  370. nwconfig = ZYNQ_GEM_NWCFG_INIT;
  371. if (priv->interface == PHY_INTERFACE_MODE_SGMII) {
  372. nwconfig |= ZYNQ_GEM_NWCFG_SGMII_ENBL |
  373. ZYNQ_GEM_NWCFG_PCS_SEL;
  374. #ifdef CONFIG_ARM64
  375. writel(readl(&regs->pcscntrl) | ZYNQ_GEM_PCS_CTL_ANEG_ENBL,
  376. &regs->pcscntrl);
  377. #endif
  378. }
  379. switch (priv->phydev->speed) {
  380. case SPEED_1000:
  381. writel(nwconfig | ZYNQ_GEM_NWCFG_SPEED1000,
  382. &regs->nwcfg);
  383. clk_rate = ZYNQ_GEM_FREQUENCY_1000;
  384. break;
  385. case SPEED_100:
  386. writel(nwconfig | ZYNQ_GEM_NWCFG_SPEED100,
  387. &regs->nwcfg);
  388. clk_rate = ZYNQ_GEM_FREQUENCY_100;
  389. break;
  390. case SPEED_10:
  391. clk_rate = ZYNQ_GEM_FREQUENCY_10;
  392. break;
  393. }
  394. /* Change the rclk and clk only not using EMIO interface */
  395. if (!priv->emio)
  396. zynq_slcr_gem_clk_setup((ulong)priv->iobase !=
  397. ZYNQ_GEM_BASEADDR0, clk_rate);
  398. setbits_le32(&regs->nwctrl, ZYNQ_GEM_NWCTRL_RXEN_MASK |
  399. ZYNQ_GEM_NWCTRL_TXEN_MASK);
  400. return 0;
  401. }
  402. static int zynq_gem_send(struct udevice *dev, void *ptr, int len)
  403. {
  404. u32 addr, size;
  405. struct zynq_gem_priv *priv = dev_get_priv(dev);
  406. struct zynq_gem_regs *regs = priv->iobase;
  407. struct emac_bd *current_bd = &priv->tx_bd[1];
  408. /* Setup Tx BD */
  409. memset(priv->tx_bd, 0, sizeof(struct emac_bd));
  410. priv->tx_bd->addr = (ulong)ptr;
  411. priv->tx_bd->status = (len & ZYNQ_GEM_TXBUF_FRMLEN_MASK) |
  412. ZYNQ_GEM_TXBUF_LAST_MASK;
  413. /* Dummy descriptor to mark it as the last in descriptor chain */
  414. current_bd->addr = 0x0;
  415. current_bd->status = ZYNQ_GEM_TXBUF_WRAP_MASK |
  416. ZYNQ_GEM_TXBUF_LAST_MASK|
  417. ZYNQ_GEM_TXBUF_USED_MASK;
  418. /* setup BD */
  419. writel((ulong)priv->tx_bd, &regs->txqbase);
  420. addr = (ulong) ptr;
  421. addr &= ~(ARCH_DMA_MINALIGN - 1);
  422. size = roundup(len, ARCH_DMA_MINALIGN);
  423. flush_dcache_range(addr, addr + size);
  424. addr = (ulong)priv->rxbuffers;
  425. addr &= ~(ARCH_DMA_MINALIGN - 1);
  426. size = roundup((RX_BUF * PKTSIZE_ALIGN), ARCH_DMA_MINALIGN);
  427. flush_dcache_range(addr, addr + size);
  428. barrier();
  429. /* Start transmit */
  430. setbits_le32(&regs->nwctrl, ZYNQ_GEM_NWCTRL_STARTTX_MASK);
  431. /* Read TX BD status */
  432. if (priv->tx_bd->status & ZYNQ_GEM_TXBUF_EXHAUSTED)
  433. printf("TX buffers exhausted in mid frame\n");
  434. return wait_for_bit(__func__, &regs->txsr, ZYNQ_GEM_TSR_DONE,
  435. true, 20000, true);
  436. }
  437. /* Do not check frame_recd flag in rx_status register 0x20 - just poll BD */
  438. static int zynq_gem_recv(struct udevice *dev, int flags, uchar **packetp)
  439. {
  440. int frame_len;
  441. u32 addr;
  442. struct zynq_gem_priv *priv = dev_get_priv(dev);
  443. struct emac_bd *current_bd = &priv->rx_bd[priv->rxbd_current];
  444. if (!(current_bd->addr & ZYNQ_GEM_RXBUF_NEW_MASK))
  445. return -1;
  446. if (!(current_bd->status &
  447. (ZYNQ_GEM_RXBUF_SOF_MASK | ZYNQ_GEM_RXBUF_EOF_MASK))) {
  448. printf("GEM: SOF or EOF not set for last buffer received!\n");
  449. return -1;
  450. }
  451. frame_len = current_bd->status & ZYNQ_GEM_RXBUF_LEN_MASK;
  452. if (!frame_len) {
  453. printf("%s: Zero size packet?\n", __func__);
  454. return -1;
  455. }
  456. addr = current_bd->addr & ZYNQ_GEM_RXBUF_ADD_MASK;
  457. addr &= ~(ARCH_DMA_MINALIGN - 1);
  458. *packetp = (uchar *)(uintptr_t)addr;
  459. return frame_len;
  460. }
  461. static int zynq_gem_free_pkt(struct udevice *dev, uchar *packet, int length)
  462. {
  463. struct zynq_gem_priv *priv = dev_get_priv(dev);
  464. struct emac_bd *current_bd = &priv->rx_bd[priv->rxbd_current];
  465. struct emac_bd *first_bd;
  466. if (current_bd->status & ZYNQ_GEM_RXBUF_SOF_MASK) {
  467. priv->rx_first_buf = priv->rxbd_current;
  468. } else {
  469. current_bd->addr &= ~ZYNQ_GEM_RXBUF_NEW_MASK;
  470. current_bd->status = 0xF0000000; /* FIXME */
  471. }
  472. if (current_bd->status & ZYNQ_GEM_RXBUF_EOF_MASK) {
  473. first_bd = &priv->rx_bd[priv->rx_first_buf];
  474. first_bd->addr &= ~ZYNQ_GEM_RXBUF_NEW_MASK;
  475. first_bd->status = 0xF0000000;
  476. }
  477. if ((++priv->rxbd_current) >= RX_BUF)
  478. priv->rxbd_current = 0;
  479. return 0;
  480. }
  481. static void zynq_gem_halt(struct udevice *dev)
  482. {
  483. struct zynq_gem_priv *priv = dev_get_priv(dev);
  484. struct zynq_gem_regs *regs = priv->iobase;
  485. clrsetbits_le32(&regs->nwctrl, ZYNQ_GEM_NWCTRL_RXEN_MASK |
  486. ZYNQ_GEM_NWCTRL_TXEN_MASK, 0);
  487. }
  488. __weak int zynq_board_read_rom_ethaddr(unsigned char *ethaddr)
  489. {
  490. return -ENOSYS;
  491. }
  492. static int zynq_gem_read_rom_mac(struct udevice *dev)
  493. {
  494. int retval;
  495. struct eth_pdata *pdata = dev_get_platdata(dev);
  496. retval = zynq_board_read_rom_ethaddr(pdata->enetaddr);
  497. if (retval == -ENOSYS)
  498. retval = 0;
  499. return retval;
  500. }
  501. static int zynq_gem_miiphy_read(struct mii_dev *bus, int addr,
  502. int devad, int reg)
  503. {
  504. struct zynq_gem_priv *priv = bus->priv;
  505. int ret;
  506. u16 val;
  507. ret = phyread(priv, addr, reg, &val);
  508. debug("%s 0x%x, 0x%x, 0x%x, 0x%x\n", __func__, addr, reg, val, ret);
  509. return val;
  510. }
  511. static int zynq_gem_miiphy_write(struct mii_dev *bus, int addr, int devad,
  512. int reg, u16 value)
  513. {
  514. struct zynq_gem_priv *priv = bus->priv;
  515. debug("%s 0x%x, 0x%x, 0x%x\n", __func__, addr, reg, value);
  516. return phywrite(priv, addr, reg, value);
  517. }
  518. static int zynq_gem_probe(struct udevice *dev)
  519. {
  520. void *bd_space;
  521. struct zynq_gem_priv *priv = dev_get_priv(dev);
  522. int ret;
  523. /* Align rxbuffers to ARCH_DMA_MINALIGN */
  524. priv->rxbuffers = memalign(ARCH_DMA_MINALIGN, RX_BUF * PKTSIZE_ALIGN);
  525. memset(priv->rxbuffers, 0, RX_BUF * PKTSIZE_ALIGN);
  526. /* Align bd_space to MMU_SECTION_SHIFT */
  527. bd_space = memalign(1 << MMU_SECTION_SHIFT, BD_SPACE);
  528. mmu_set_region_dcache_behaviour((phys_addr_t)bd_space,
  529. BD_SPACE, DCACHE_OFF);
  530. /* Initialize the bd spaces for tx and rx bd's */
  531. priv->tx_bd = (struct emac_bd *)bd_space;
  532. priv->rx_bd = (struct emac_bd *)((ulong)bd_space + BD_SEPRN_SPACE);
  533. priv->bus = mdio_alloc();
  534. priv->bus->read = zynq_gem_miiphy_read;
  535. priv->bus->write = zynq_gem_miiphy_write;
  536. priv->bus->priv = priv;
  537. ret = mdio_register_seq(priv->bus, dev->seq);
  538. if (ret)
  539. return ret;
  540. return zynq_phy_init(dev);
  541. }
  542. static int zynq_gem_remove(struct udevice *dev)
  543. {
  544. struct zynq_gem_priv *priv = dev_get_priv(dev);
  545. free(priv->phydev);
  546. mdio_unregister(priv->bus);
  547. mdio_free(priv->bus);
  548. return 0;
  549. }
  550. static const struct eth_ops zynq_gem_ops = {
  551. .start = zynq_gem_init,
  552. .send = zynq_gem_send,
  553. .recv = zynq_gem_recv,
  554. .free_pkt = zynq_gem_free_pkt,
  555. .stop = zynq_gem_halt,
  556. .write_hwaddr = zynq_gem_setup_mac,
  557. .read_rom_hwaddr = zynq_gem_read_rom_mac,
  558. };
  559. static int zynq_gem_ofdata_to_platdata(struct udevice *dev)
  560. {
  561. struct eth_pdata *pdata = dev_get_platdata(dev);
  562. struct zynq_gem_priv *priv = dev_get_priv(dev);
  563. const char *phy_mode;
  564. pdata->iobase = (phys_addr_t)dev_get_addr(dev);
  565. priv->iobase = (struct zynq_gem_regs *)pdata->iobase;
  566. /* Hardcode for now */
  567. priv->emio = 0;
  568. priv->phyaddr = -1;
  569. priv->phy_of_handle = fdtdec_lookup_phandle(gd->fdt_blob,
  570. dev->of_offset, "phy-handle");
  571. if (priv->phy_of_handle > 0)
  572. priv->phyaddr = fdtdec_get_int(gd->fdt_blob,
  573. priv->phy_of_handle, "reg", -1);
  574. phy_mode = fdt_getprop(gd->fdt_blob, dev->of_offset, "phy-mode", NULL);
  575. if (phy_mode)
  576. pdata->phy_interface = phy_get_interface_by_name(phy_mode);
  577. if (pdata->phy_interface == -1) {
  578. debug("%s: Invalid PHY interface '%s'\n", __func__, phy_mode);
  579. return -EINVAL;
  580. }
  581. priv->interface = pdata->phy_interface;
  582. priv->emio = fdtdec_get_bool(gd->fdt_blob, dev->of_offset, "xlnx,emio");
  583. printf("ZYNQ GEM: %lx, phyaddr %x, interface %s\n", (ulong)priv->iobase,
  584. priv->phyaddr, phy_string_for_interface(priv->interface));
  585. return 0;
  586. }
  587. static const struct udevice_id zynq_gem_ids[] = {
  588. { .compatible = "cdns,zynqmp-gem" },
  589. { .compatible = "cdns,zynq-gem" },
  590. { .compatible = "cdns,gem" },
  591. { }
  592. };
  593. U_BOOT_DRIVER(zynq_gem) = {
  594. .name = "zynq_gem",
  595. .id = UCLASS_ETH,
  596. .of_match = zynq_gem_ids,
  597. .ofdata_to_platdata = zynq_gem_ofdata_to_platdata,
  598. .probe = zynq_gem_probe,
  599. .remove = zynq_gem_remove,
  600. .ops = &zynq_gem_ops,
  601. .priv_auto_alloc_size = sizeof(struct zynq_gem_priv),
  602. .platdata_auto_alloc_size = sizeof(struct eth_pdata),
  603. };